Compositions and methods for crosslinking polymers in the presence of atmospheric oxygen
US-2017267855-A1 · Sep 21, 2017 · US
US10138350B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10138350-B2 |
| Application number | US-201515518511-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 14, 2015 |
| Priority date | Oct 17, 2014 |
| Publication date | Nov 27, 2018 |
| Grant date | Nov 27, 2018 |
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An aqueous emulsion of dialkyl peroxide has at least one dialkyl peroxide in liquid form at room temperature, representing between 10% and 75% by weight of the emulsion, at least one emulsifier representing from 0.01% to 10% by weight of the emulsion, optionally, at least one antifreeze, optionally at least one functional additive, water, the amount of which is determined so as to form the rest of said emulsion (100%), characterized in that the emulsifier is a polyethoxylated nonionic surfactant. Also, a process for preparing this aqueous emulsion.
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The invention claimed is: 1. Aqueous emulsion of dialkyl peroxide consisting of: at least one dialkyl peroxide in liquid form at room temperature, representing between 10% and 75% by weight of the emulsion, at least one emulsifier representing from 0.01% to 10% by weight of the emulsion, optionally, at least one antifreeze, optionally at least one functional additive, water, the amount of which is determined so as to form the rest of said emulsion (100%), wherein the emulsifier is a polyethoxylated nonionic surfactant chosen from the group consisting of ethoxylated carboxylic acid esters, ethoxylated amides, ethoxylated fatty amines, ethoxylated, hydrogenated or non-hydrogenated, plant or animal oils, ethoxylated sorbitan esters, ethoxylated glycerol esters, and combinations thereof, optionally in combination with at least an unethoxylated sorbitan ester, and wherein the overall HLB (hydrophilic-lipophilic balance) of the emulsifier is between 5 and 12. 2. Emulsion according to claim 1 , wherein the emulsifier consists of a mixture of an unethoxylated sorbitan ester with an ethoxylated sorbitan ester. 3. Emulsion according to claim 1 , wherein the emulsifier consists of an ethoxylated plant oil. 4. Emulsion according to claim 1 , wherein the dialkyl peroxide represents more than 40% by weight of the emulsion. 5. Emulsion according to claim 1 , wherein the emulsifier represents between 1% and 3% by weight of the emulsion. 6. Emulsion according to claim 1 , wherein the dialkyl peroxide consists of 2,5-dimethyl-2,5-di(tert-butylperoxy)hexane. 7. Emulsion according to claim 2 , wherein the unethoxylated sorbitan ester is chosen from the group consisting of a monolaurate of sorbitan, a monooleate of sorbitan, a trioleate of sorbitan, a monostearate of sorbitan, and a tristearate of sorbitan, and the ethoxylated sorbitan ester is chosen from the group consisting of ethoxylated structures thereof of a monolaurate of sorbitan, a monooleate of sorbitan, a trioleate of sorbitan, a monostearate of sorbitan and a tristearate of sorbitan. 8. Emulsion according to claim 1 , wherein the ethoxylated sorbitan ester has a degree of ethoxylation of less than or equal to 20 mol of ethylene oxide. 9. Process for preparing the aqueous emulsion according to claim 1 , wherein the emulsion process comprises the steps of: dispersing and homogenizing the emulsifier in water, and then adding the dialkyl peroxide to the emulsifier in water aqueous emulsion, and then emulsifying the mixture thus made during an emulsification step at a temperature below 30° C. 10. Emulsion according to claim 1 , wherein the overall HLB of the emulsifier is between 7 and 12. 11. Emulsion according to claim 1 , wherein the overall HLB of the emulsifier is between 9 and 10. 12. Process for crosslinking of elastomers, comprising the crosslinking of elastomers in the presence of the aqueous emulsion according to claim 1 . 13. Process for polymerizing ethylene derivatives or acrylic monomer derivatives alone or with other monomers, comprising the polymerization of ethylene derivatives or acrylic monomer derivatives alone or with other monomers in the presence of the aqueous emulsion according to claim 1 .
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